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Results 1 to 25 of 474

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Theory of the forced wetting transitionTAK SHING CHAN; SNOEIJER, Jacco H; EGGERS, Jens et al.Physics of fluids (1994). 2012, Vol 24, Num 7, issn 1070-6631, 072104.1-072104.10Article

On the breakup of fluid films of finite and infinite extentDIEZ, Javier A; KONDIC, Lou.Physics of fluids (1994). 2007, Vol 19, Num 7, issn 1070-6631, 072107.1-072107.22Article

Dynamics of a bonding frontRIEUTORD, F; BATAILLOU, B; MORICEAU, H et al.Physical review letters. 2005, Vol 94, Num 23, pp 236101.1-236101.4, issn 0031-9007Article

L'énigme de la théière qui coule = The teapot effectCOURTY, Jean-Michel; KIERLIK, Edouard.Pour la science (Imprimé). 2010, Num 392, pp 98-100, issn 0153-4092, 3 p.Article

Imbibition of concentrated suspensions in capillariesHOLLOWAY, William; ARISTOFF, Jeffrey M; STONE, Howard A et al.Physics of fluids (1994). 2011, Vol 23, Num 8, issn 1070-6631, 081701.1-081701.4Article

Maximum speed of dewetting on a fiberCHAN, Tak Shing; GUEUDRE, Thomas; SNOEIIER, Jacco H et al.Physics of fluids (1994). 2011, Vol 23, Num 11, issn 1070-6631, 112103.1-112103.9Article

The destabilization of an initially thick liquid sheet edgeLHUISSIER, Henri; VILLERMAUX, Emmanuel.Physics of fluids (1994). 2011, Vol 23, Num 9, issn 1070-6631, 091705.1-091705.4Article

Some singular errors near the contact line singularity, and ways to resolve bothPISMEN, L. M.The European physical journal. Special topics. 2011, Vol 197, pp 33-36, issn 1951-6355, 4 p.Article

Liquid Evaporation on Superhydrophobic and Superhydrophilic Nanostructured SurfacesMILJKOVIC, Nenad; ENRIGHT, Ryan; MAROO, Shalabh C et al.Journal of heat transfer. 2011, Vol 133, Num 8, issn 0022-1481, p. 080903.1Conference Paper

On spread extent of sessile droplet into porous medium: Numerical solution and comparisons with experimentsMARKICEVIC, B; D'ONOFRIO, T. G; NAVAZ, H. K et al.Physics of fluids (1994). 2010, Vol 22, Num 1, issn 1070-6631, 012103.1-012103.12Article

Analytical solution for Stokes flow inside an evaporating sessile drop: Spherical and cylindrical cap shapesMASOUD, Hassan; FELSKE, James D.Physics of fluids (1994). 2009, Vol 21, Num 4, issn 1070-6631, 042102.1-042102.11Article

Modular approach towards multi-functional surfaces with adjustable and dual-responsive wettability using a hybrid polymer toolboxKESSLER, Daniel; NILLES, Katja; THEATO, Patrick et al.Journal of material chemistry. 2009, Vol 19, Num 43, pp 8184-8189, issn 0959-9428, 6 p.Article

Drops sliding down an incline at large contact line velocity: What happens on the road towards rolling?LIMAT, Laurent.Journal of fluid mechanics. 2014, Vol 738, pp 1-4, issn 0022-1120, 4 p.Article

Dewetting Transitions on Superhydrophobic Surfaces: When Are Wenzel Drops Reversible?BOREYKO, Jonathan B; COLLIER, C. Patrick.Journal of physical chemistry. C. 2013, Vol 117, Num 35, pp 18084-18090, issn 1932-7447, 7 p.Article

Slip or not slip? A methodical examination of the interface formation model using two-dimensional droplet spreading on a horizontal planar substrate as a prototype systemSIBLEY, David N; SAVVA, Nikos; KALLIADASIS, Serafim et al.Physics of fluids (1994). 2012, Vol 24, Num 8, issn 1070-6631, 082105.1-082105.36Article

Drop impact and wettability: From hydrophilic to superhydrophobic surfacesANTONINI, Carlo; AMIRFAZLI, Alidad; MARENGO, Marco et al.Physics of fluids (1994). 2012, Vol 24, Num 10, issn 1070-6631, 102104.1-102104.13Conference Paper

An expression for droplet evaporation incorporating thermal effectsSEFIANE, K; BENNACER, R.Journal of fluid mechanics. 2011, Vol 667, pp 260-271, issn 0022-1120, 12 p.Article

Multichannel Molecular Switch with a Surface-Confined Electroactive Radical Exhibiting Tunable Wetting PropertiesSIMAO, Claudia; MAS-TORRENT, Marta; VECIANA, Jaume et al.Nano letters (Print). 2011, Vol 11, Num 10, pp 4382-4385, issn 1530-6984, 4 p.Article

The influence of contact line velocity and acceleration on the dynamic contact angle: An experimental study in microgravityXU, Sheng-Hua; WANG, Cai-Xia; SUN, Zhi-Wei et al.International journal of heat and mass transfer. 2011, Vol 54, Num 9-10, pp 2222-2225, issn 0017-9310, 4 p.Article

A study of the influence of initial liquid volume on the capillary flow in an interior corner under microgravityWANG, Cai-Xia; XU, Sheng-Hua; SUN, Zhi-Wei et al.International journal of heat and mass transfer. 2010, Vol 53, Num 9-10, pp 1801-1807, issn 0017-9310, 7 p.Article

Spinning droplets on superhydrophobic surfacesBURKARTER, E; BERLIM, L. S; SCHREINER, W. H et al.Physics of fluids (1994). 2010, Vol 22, Num 1, issn 1070-6631, 012102.1-012102.5Article

Building water bridges in air: Electrohydrodynamics of the floating water bridgeMARIN, Alvaro G; LOHSE, Detlef.Physics of fluids (1994). 2010, Vol 22, Num 12, issn 1070-6631, 122104.1-122104.9Article

Capillary spreading of a droplet in the partially wetting regime using a diffuse-interface modelKHATAVKAR, V. V; ANDERSON, P. D; MEIJER, H. E. H et al.Journal of Fluid Mechanics. 2007, Vol 572, pp 367-387, issn 0022-1120, 21 p.Article

Wetting kinetics of a thin film evaporating in airSARITHA, S; NEOGI, P.Physics of fluids (1994). 2007, Vol 19, Num 11, issn 1070-6631, 112104.1-112104.6Article

Dewetting through nucleationHERMINGHAUS, Stephan; BROCHARD, Francoise.Comptes rendus. Physique. 2006, Vol 7, Num 9-10, pp 1073-1081, issn 1631-0705, 9 p.Article

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